US6986989B2

Nanoparticles having oligonucleotides attached thereto and uses therefor

Claim Score by NHIP

Read claim 1, the broadest

Abstract

The invention provides methods of detecting a nucleic acid. The methods comprise contacting the nucleic acid with one or more types of particles having oligonucleotides attached thereto. In one embodiment of the method, the oligonucleotides are attached to nanoparticles and have sequences complementary to portions of the sequence of the nucleic acid. A detectable change (preferably a color change) is brought about as a result of the hybridization of the oligonucleotides on the nanoparticles to the nucleic acid. The invention also provides compositions and kits comprising particles. The invention further provides methods of synthesizing unique nanoparticle-oligonucleotide conjugates, the conjugates produced by the methods, and methods of using the conjugates. In addition, the invention provides nanomaterials and nanostructures comprising nanoparticles and methods of nanofabrication utilizing nanoparticles. Finally, the invention provides a method of separating a selected nucleic acid from other nucleic acids.

US6986989B2, drawing sheet 1
Sheet 1 of 52

Term

Term ended

Expired 20 September 2017, 9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

56 claims: 3 independent, 53 dependent

  1. 1
    Broadest claimClaim Score 71, broad(NHIP)A method of binding oligonucleotides to nanoparticles to produce stable nanoparticle-oligonucleotide conjugates, the method comprising:providing oligonucleotides having covalently bound thereto a moiety comprising a functional group which can bind to the nanoparticles;contacting the oligonucleotides and the nanoparticles in aqueous solution for a period of time sufficient to allow at least some of the oligonucleotides to bind to the nanoparticles;adding at least one salt to the aqueous solution to form a salt solution;and contacting the oligonucleotides and nanoparticles in the salt solution for an additional period of time sufficient to allow sufficient additional oligonucleotides to bind to the nanoparticles to produce the stable nanoparticle-oligonucleotide conjugates.
  2. 16
    A method of binding oligonucleotides to nanoparticles to produce nanoparticle-oligonucleotide conjugates, the method comprising:providing oligonucleotides, the oligonucleotides comprising at least one type of recognition oligonucleotides, each of the recognition oligonucleotides comprising a spacer portion and a recognition portion, the spacer portion being designed so that it can bind to the nanoparticles;and contacting the oligonucleotides and the nanoparticles under conditions effective to allow at least some of the recognition oligonucleotides to bind to the nanoparticles to produce the nanoparticle-oligonucleotide conjugates, said conditions comprising contacting the oligonucleotides and the nanoparticles in aqueous solution for a period of time sufficient to allow at least some of the oligonucleotides to bind to the nanoparticles;adding at least one salt to the aqueous solution to form a salt solution;and contacting the oligonucleotides and nanoparticles in the salt solution for an additional period of time sufficient to allow sufficient additional oligonucleotides to bind to the nanoparticles to produce the stable nanoparticle-oligonucleotide conjugates.
  3. 34
    A method of binding oligonucleotides to nanoparticles to produce nanoparticle-oligonucleotide conjugates, the method comprising:providing oligonucleotides having covalently bound thereto a moiety comprising a functional group which can bind to the nanoparticles, the oligonucleotides comprising: a type of recognition oligonucleotides;and a type of diluent oligonucleotides;contacting the oligonucleotides with the nanoparticles in aqueous solution for a period of time sufficient to allow at least some of each of the types of oligonucleotides to bind to the nanoparticles;adding at least one salt to the aqueous solution to form a salt solution;and contacting the oligonucleotides and nanoparticles in the salt solution for an additional period of time sufficient to allow additional oligonucleotides of each of the types of oligonucleotides to bind to the nanoparticles to produce the nanoparticle-oligonucleotide conjugates.
  4. 56
    The method according to any one of claims 1 or 34 wherein the salt solution has an ionic strength sufficient to overcome at least partially the electrostatic attraction or repulsion of the oligonucleotides for the nanoparticles and the electrostatic repulsion of the oligonucleotides for each other.